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Molecular docking, DFT analysis, and dynamics simulation of natural bioactive compounds targeting ACE2 and TMPRSS2 dual binding sites of spike protein of SARS CoV-2.
Yadav, Rohitash; Hasan, Shazia; Mahato, Sumit; Celik, Ismail; Mary, Y S; Kumar, Ashish; Dhamija, Puneet; Sharma, Ambika; Choudhary, Neha; Chaudhary, Pankaj Kumar; Kushwah, Ankita Singh; Chaudhary, Jitendra Kumar.
  • Yadav R; Department of Pharmacology, All India Institute of Medical Sciences, Rishikesh, India.
  • Hasan S; Department of Pharmacology, All India Institute of Medical Sciences, Rishikesh, India.
  • Mahato S; Department of Pharmacology, All India Institute of Medical Sciences, Rishikesh, India.
  • Celik I; Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Erciyes University, Kayseri, Turkey.
  • Mary YS; Thushara, Neethinagar, Kollam, Kerala, India.
  • Kumar A; Department of Biochemistry, All India Institute of Medical Sciences, Rishikesh, India.
  • Dhamija P; Department of Pharmacology, All India Institute of Medical Sciences, Rishikesh, India.
  • Sharma A; Department of Biochemistry, U.P. Pt. DeenDayalUpadhyaya Veterinary Science University, Mathura, U.P., India.
  • Choudhary N; Centre for Computational Biology and Bioinformatics, School of Life Sciences, Central University of Himachal Pradesh, India.
  • Chaudhary PK; Department of Biotechnology, Indian Institute of Technology, Roorkee, India.
  • Kushwah AS; Department of Biotechnology, Indian Institute of Technology, Roorkee, India.
  • Chaudhary JK; Department of Zoology, Shivaji College, University of Delhi, New Delhi, India.
J Mol Liq ; 342: 116942, 2021 Nov 15.
Article in English | MEDLINE | ID: covidwho-1324277
ABSTRACT
The scientific community is continuously working to discover drug candidates against potential targets of SARS-CoV-2, but effective treatment has not been discovered yet. The virus enters the host cell through molecular interaction with its enzymatic receptors i.e., ACE2 and TMPRSS2, which, if, synergistically blocked can lead to the development of novel drug candidates. In this study, 1503 natural bioactive compounds were screened by HTVS, followed by SP and XP docking using Schrodinger Maestro software. Bio-0357 (protozide) and Bio-597 (chrysin) were selected for dynamics simulation based on synergistic binding affinity on S1 (docking score -9.642 and -8.78 kcal/mol) and S2 domains (-5.83 and -5.3 kcal/mol), and the RMSD, RMSF and Rg analyses showed stable interaction. The DFT analysis showed that the adsorption of protozide/chrysin, the band gap of protozide/chrysin-F/G reduced significantly. From SERS, results, it can be concluded that QDs nanocluster will act as a sensor for the detection of drugs. The docking study showed Bio-0357 and Bio-0597 bind to both S1 and S2 domains through stable molecular interactions, which can lead to the discovery of new drug candidates to prevent the entry of SARS-CoV-2. This in-silico study may be helpful to researchers for further in vitro experimental validation and development of new therapy for COVID-19.
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Full text: Available Collection: International databases Database: MEDLINE Type of study: Prognostic study Language: English Journal: J Mol Liq Year: 2021 Document Type: Article Affiliation country: J.molliq.2021.116942

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Full text: Available Collection: International databases Database: MEDLINE Type of study: Prognostic study Language: English Journal: J Mol Liq Year: 2021 Document Type: Article Affiliation country: J.molliq.2021.116942